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conference paper

A Study of Persistent Fault Analysis

Caforio, Andrea
•
Banik, Subhadeep  
2019
Security, Privacy, and Applied Cryptography Engineering
SPACE 2019:9th International Conference on Security, Privacy and Applied Cryptographic Engineering

Persistent faults mark a new class of injections that perturb lookup tables within block ciphers with the overall goal of recovering the encryption key. Unlike earlier fault types persistent faults remain intact over many encryptions until the affected device is rebooted, thus allowing an adversary to collect a multitude of correct and faulty ciphertexts. It was shown to be an efficient and effective attack against substitution-permutation networks. In this paper, the scope of persistent faults is further broadened and explored. More specifically, we show how to construct a key-recovery attack on generic Feistel schemes in the presence of persistent faults. In a second step, we leverage these faults to reverse-engineer AES- and PRESENT-like ciphers in a chosen-key setting, in which some of the computational layers, like substitution tables, are kept secret. Finally, we propose a novel, dedicated, and low-overhead countermeasure that provides adequate protection for hardware implementations against persistent fault injections.

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Type
conference paper
DOI
10.1007/978-3-030-35869-3_4
Author(s)
Caforio, Andrea
Banik, Subhadeep  
Date Issued

2019

Publisher

Springer

Published in
Security, Privacy, and Applied Cryptography Engineering
Start page

13

End page

33

URL

ePrint version

https://eprint.iacr.org/2019/1057
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LASEC  
Event nameEvent placeEvent date
SPACE 2019:9th International Conference on Security, Privacy and Applied Cryptographic Engineering

Gandhinagar, India

December 3 - 7, 2019

Available on Infoscience
September 30, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/161683
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